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WO2002002358A1 - Non-attached monitoring assembly for pneumatic tire - Google Patents

Non-attached monitoring assembly for pneumatic tire Download PDF

Info

Publication number
WO2002002358A1
WO2002002358A1 PCT/US2001/020404 US0120404W WO0202358A1 WO 2002002358 A1 WO2002002358 A1 WO 2002002358A1 US 0120404 W US0120404 W US 0120404W WO 0202358 A1 WO0202358 A1 WO 0202358A1
Authority
WO
WIPO (PCT)
Prior art keywords
tire
combination
assembly
monitoring assembly
monitoring
Prior art date
Application number
PCT/US2001/020404
Other languages
French (fr)
Inventor
Russell W. Koch
Paul B. Wilson
Jack A. Dutcher
Guy J. Walenga
Original Assignee
Bridgestone/Firestone North American Tire, Llc
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Bridgestone/Firestone North American Tire, Llc filed Critical Bridgestone/Firestone North American Tire, Llc
Priority to DE60106615T priority Critical patent/DE60106615T2/en
Priority to JP2002506960A priority patent/JP4469937B2/en
Priority to AU7151201A priority patent/AU7151201A/en
Priority to MXPA02011220A priority patent/MXPA02011220A/en
Priority to CA002411722A priority patent/CA2411722C/en
Priority to EP01950531A priority patent/EP1294583B1/en
Priority to AU2001271512A priority patent/AU2001271512B2/en
Publication of WO2002002358A1 publication Critical patent/WO2002002358A1/en

Links

Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B60VEHICLES IN GENERAL
    • B60CVEHICLE TYRES; TYRE INFLATION; TYRE CHANGING; CONNECTING VALVES TO INFLATABLE ELASTIC BODIES IN GENERAL; DEVICES OR ARRANGEMENTS RELATED TO TYRES
    • B60C23/00Devices for measuring, signalling, controlling, or distributing tyre pressure or temperature, specially adapted for mounting on vehicles; Arrangement of tyre inflating devices on vehicles, e.g. of pumps or of tanks; Tyre cooling arrangements
    • B60C23/02Signalling devices actuated by tyre pressure
    • B60C23/04Signalling devices actuated by tyre pressure mounted on the wheel or tyre
    • B60C23/0408Signalling devices actuated by tyre pressure mounted on the wheel or tyre transmitting the signals by non-mechanical means from the wheel or tyre to a vehicle body mounted receiver
    • B60C23/0422Signalling devices actuated by tyre pressure mounted on the wheel or tyre transmitting the signals by non-mechanical means from the wheel or tyre to a vehicle body mounted receiver characterised by the type of signal transmission means
    • B60C23/0433Radio signals
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B60VEHICLES IN GENERAL
    • B60CVEHICLE TYRES; TYRE INFLATION; TYRE CHANGING; CONNECTING VALVES TO INFLATABLE ELASTIC BODIES IN GENERAL; DEVICES OR ARRANGEMENTS RELATED TO TYRES
    • B60C19/00Tyre parts or constructions not otherwise provided for
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B60VEHICLES IN GENERAL
    • B60CVEHICLE TYRES; TYRE INFLATION; TYRE CHANGING; CONNECTING VALVES TO INFLATABLE ELASTIC BODIES IN GENERAL; DEVICES OR ARRANGEMENTS RELATED TO TYRES
    • B60C23/00Devices for measuring, signalling, controlling, or distributing tyre pressure or temperature, specially adapted for mounting on vehicles; Arrangement of tyre inflating devices on vehicles, e.g. of pumps or of tanks; Tyre cooling arrangements
    • B60C23/02Signalling devices actuated by tyre pressure
    • B60C23/04Signalling devices actuated by tyre pressure mounted on the wheel or tyre
    • B60C23/0408Signalling devices actuated by tyre pressure mounted on the wheel or tyre transmitting the signals by non-mechanical means from the wheel or tyre to a vehicle body mounted receiver
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B60VEHICLES IN GENERAL
    • B60CVEHICLE TYRES; TYRE INFLATION; TYRE CHANGING; CONNECTING VALVES TO INFLATABLE ELASTIC BODIES IN GENERAL; DEVICES OR ARRANGEMENTS RELATED TO TYRES
    • B60C5/00Inflatable pneumatic tyres or inner tubes
    • B60C5/004Inflatable pneumatic tyres or inner tubes filled at least partially with liquid
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01QANTENNAS, i.e. RADIO AERIALS
    • H01Q1/00Details of, or arrangements associated with, antennas
    • H01Q1/12Supports; Mounting means
    • H01Q1/22Supports; Mounting means by structural association with other equipment or articles
    • H01Q1/2208Supports; Mounting means by structural association with other equipment or articles associated with components used in interrogation type services, i.e. in systems for information exchange between an interrogator/reader and a tag/transponder, e.g. in Radio Frequency Identification [RFID] systems
    • H01Q1/2241Supports; Mounting means by structural association with other equipment or articles associated with components used in interrogation type services, i.e. in systems for information exchange between an interrogator/reader and a tag/transponder, e.g. in Radio Frequency Identification [RFID] systems used in or for vehicle tyres

Definitions

  • the present invention generally relates to pneumatic tires and devices for monitoring the conditions of the tires. More particularly, the
  • present invention is related to a radio frequency active monitor assembly
  • the present invention relates to a monitoring device for a pneumatic tire that is housed in a substantially
  • the spherical body is placed loosely between a tire and a tire rim when the tire is mounted on the tire rim and allowed to
  • One type of known monitoring device uses a passive integrative circuit
  • the attachment problem is difficult when the monitoring device is attached to the inside of the tire, the outside of the tire, or
  • the rim may be damaged, tool must be created, and the mounting configuration must prevent air from leaking from the tire.
  • Each of these locations creates different problems with the attachment process as well as the manufacturing process of the tire. It is generally undesirable to
  • Tires are subject to
  • Another significant problem experienced with attaching a monitoring device to a pneumatic tire is that the surface of the tire where the monitoring
  • the invention must be able to operate in a wet environment.
  • a monitoring assembly for a pneumatic tire that may be monitored from the outside of the tire while the tire is mounted on a tire rim and while the vehicle is in use.
  • Another objective of the present invention is to provide a monitoring assembly for a pneumatic tire that is placed within the tire but is not
  • Still another objective of the present invention is to provide a
  • monitoring assembly for a pneumatic tire wherein the use of the monito ⁇ ng device does not require modification to the structure of the tire.
  • Another objective of the present invention is to provide a monitoring
  • tire is mounted on a tire rim such that the monitoring device may be
  • a further objective of the present invention is to provide a monitoring assembly for a pneumatic tire that may be used with existing tires.
  • Still a further objective of the present invention is to provide a
  • monitoring assembly for a pneumatic tire that includes wings that orient the monitoring device with respect to the tire so that the antenna of the monitoring device may establish a reliable communication between the
  • a further objective of the present invention is to provide a monitoring assembly for a pneumatic tire that includes a pressure sensor that is
  • Another objective of the present invention is to provide a monitoring assembly for a pneumatic tire that allows a pressure sensor to function
  • Another objective of the present invention is to provide a monitoring assembly for a pneumatic tire that protects the sensitive electronic equipment of the monitoring device in a protective body that has a series of
  • layers including a cushioned layer that absorbs impact forces.
  • Another objective of the present invention is to provide a monitoring
  • An additional objective of the present invention is to provide a
  • monitoring assembly for a pneumatic tire that is of simple construction, that achieves the stated objectives in a simple, effective, and inexpensive
  • Another objective of the invention is to provide a monitoring device that will operate in a wet environment.
  • Another objective of the invention is to provide a monitoring device
  • the combination includes a pneumatic tire having a body
  • the monitoring assembly being loosely disposed within the chamber whereby
  • the monitoring assembly moves freely within said chamber being restrained only by said tire body and the rim; and the monitoring assembly having a specific gravity less than the specific gravity of the liquid such that the monitoring assembly will float in the liquid.
  • the assembly for use in a pneumatic tire.
  • the assembly includes at least one sensor for detecting an engineering condition of a tire; a protective
  • the protective body surrounding the sensor; the protective body having sufficient curvature
  • the protective body and the sensor having a specific gravity less than 1 so
  • the monitoring assembly will float on liquids having a specific gravity of 1 and higher.
  • Fig. 1 is a sectional view of a pneumatic tire mounted on a rim having
  • the monitoring device assembly of the present invention located in the
  • FIG. 2 is an enlarged perspective view of the monitoring device assembly of Fig. 1 removed from within the tire;
  • Fig. 3 is a sectional view of the monitoring device of Fig. 2, the sectional view taken through a portion of the monitoring device assembly including the breathing tube;
  • Fig. 4 is a perspective view, portions of which are broken away and in section, of a modified embodiment of the monitoring device of Fig. 2;
  • Fig. 5 is a diagrammatic plan view with portions broken away
  • Fig. 6 is a fragmentary view with portions broken away and in section of a further modified monitoring device assembly from that of Fig. 4;
  • Figs. 7A-7D schematically depict alternative protective body shapes
  • Fig. 8 is a perspective view of a modified embodiment of the
  • Fig. 9 is a view similar to Fig. 3 showing an alternative embodiment of the breathing tube configuration
  • Fig. 10 is a view similar to Fig. 1 showing the monitoring assembly
  • assembly 10 generally includes a radio frequency, active, electronic monitoring device 12 surrounded by a protective body 14.
  • Device 12 may be of the type shown in U.S. Patent No. 5,500,065, the contents of which
  • Assembly 10 is used simply by placing it inside a tire 16 such that assembly
  • Assembly 10 is free to move about a pressurized air chamber 20 formed
  • assembly 10 may be simply placed in tire 16 before the tire is mounted on rim 18. This method of combining
  • assembly 10 with tire 16 allows the assembly to be used with existing tires, allows assembly 10 to be used with different tires, and does not require the
  • tire manufacturing line to be reconfigured to add assembly 10 to a specific tire.
  • assembly 10 may be particularly useful in large off-the- road tires that do not rotate at a high rate of speed but could also be used
  • Monitoring assembly 10 will rest at the
  • Monitoring assembly 10 may rock back and forth as tire 16 rotates and experiences bumps but will not spin about the rotational axis of tire 16 at lower speeds. In these situations, monitoring assembly 10 would not experience significant impact or shock forces that would tend to damage electronic active monitoring device 12. When tire 16 rotates faster, there is
  • monitoring assembly 10 to rotate about the rotational axis of tire 16 as if it was fixed to the inner surface of the tire.
  • Protective body 14 is
  • Protective body 14 is shaped to prevent the movement of monitoring
  • protective body 14 may be formed in any of the shapes depicted in Figs. 7A-7D.
  • protective body 14 includes an encapsulation layer 22, an outer skin 24, and
  • Encapsulation layer 22 may be formed from a
  • substantially rigid encapsulation material such as a hard plastic, epoxy, or
  • Encapsulation layer 22 is configured to maintain the position of each of the elements of electronic monitoring device 12 when monitoring
  • cushion 26 preferably is fabricated from a foam or a soft rubber and provides a shock absorber to assembly 10.
  • the foam is preferably resilient. As can be seen in Fig. 3, the thickness of cushion 26 varies so that the internal surface of cushion 26 matches the exterior surface of encapsulation
  • Skin 24 provides a durable, protective layer to monitoring assembly 10 and may be fabricated from a substantially durable rubber or plastic that is fixed
  • skin 24 has an external diameter
  • Electronic monitoring device 12 preferably is an active monitoring
  • a device that includes at least one sensor such as a pressure sensor 30.
  • thermometer 32 for measuring the internal temperature of tire 16.
  • Electronic monitoring device 12 may further include
  • a battery 34 that powers a central processing unit (CPU) 36 that both drives and monitors the other sensors of device 12.
  • CPU central processing unit
  • Numerous types of electronic monitoring devices are known in the art and the specific configuration
  • Pressure sensor 30 must be exposed to the pressure of the
  • a breathing tube 38 thus is provided through encapsulation layer 22, cushion 26, and skin 24. Breathing tube 38 preferably is formed during the
  • Breathing tube 38 may be empty to provide direct fluid
  • breathing tube 38 is filled with a transfer gel 40 that has a one-to-one transfer ratio so that pressure sensor 30 senses the pressure change in transfer gel 40
  • An indentation 42 is provided in skin 24 to give transfer gel 40 more surface
  • a flexible diaphragm 44 (Fig.
  • monitoring assembly 10 may be provided with a pair of wings 50 that extend from substantially opposite sides of protective body 14 as shown in FIG. 4.
  • Wings 50 help maintain the alignment of assembly 10 in tire 16 when the
  • each wing 50 is formed from the
  • Wings 50 may also be fabricated from a material that is substantially the same or the same as the material of an innerliner 56 of tire 16. In still other embodiments of the present invention, wings 50 may be reinforced with rigid plastic member or other types of reinforcements. As discussed above, wings 50 help maintain the alignment
  • monitoring assembly 10 within tire 16 in order to provide a more efficient transmission signal therefrom.
  • wings 50 will help align
  • each wing 50 extends in a direct substantially parallel to the rotational axis of tire 16.
  • antenna 56 may extend from CPU 36 or another location of electronic
  • monitoring device 12 through encapsulation layer 22, through cushion 26,
  • antenna 50 allows it to more easily communicate with a data gathering device (again not shown) outside of tire 16 and allows antenna 56 to be ideally configured to transfer strong signals.
  • a data gathering device (again not shown) outside of tire 16 and allows antenna 56 to be ideally configured to transfer strong signals.
  • antenna 56 in wing
  • monitoring assembly 100 having a pair of wings 102 that are conically-shaped.
  • monitoring assembly 10 is configured to be liquid-tight and float (Fig. 10) on a variety of liquids 110 such as water, Tire Life®, or other liquids. Most liquids 1 10 disposed within tire 16 will have a specific gravity of 1 or higher. As such, the specific gravity of assembly 10 must be less than 1 in these embodiments. Assembly 10 may be configured to float by fabricating protective body 14 entirely from materials that float or by trapping a sufficient amount of air within protective body 14 to cause assembly 10 to float.
  • Assembly 10 has a longer life when it floats on the upper surface of
  • the improved monitoring assembly for a pneumatic tire is simplified, provides an effective, safe, inexpensive, and efficient device

Landscapes

  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Measuring Fluid Pressure (AREA)
  • Tires In General (AREA)
  • Arrangements For Transmission Of Measured Signals (AREA)

Abstract

A monitoring assembly for a pneumatic tire includes an electronic monitoring device having at least one sensor (10) disposed in a protective body. The monitoring assembly is configured to float on a variety of liquids (110) that are typically disposed within a tire. The protective body (14) is liquid-tight and includes an encapsulation layer that encapsulates the substrate and sensors, a cushion, and a skin on the outside of the cushion. The protective body is substantially spherical allowing the assembly to roll about the inside of a tire without bieng permanently connected to the tire. The monitoring assembly is simply placed in a tire before the tire is mounted on a vehicle rim and allowed to move about loosely in the tire chamber when the tire is in use.

Description

NON-ATTACHED MONITORING ASSEMBLY FOR PNEUMATIC TIRE
CROSS REFERENCE TO RELATED APPLICATIONS
This application is a continuation-in-part application of currently-
pending United States Patent application serial no. 09/191 ,671 filed November 13, 1998, the disclosures of which are incorporated herein by reference.
BACKGROUND OF THE INVENTION
Technical Field
The present invention generally relates to pneumatic tires and devices for monitoring the conditions of the tires. More particularly, the
present invention is related to a radio frequency active monitor assembly
that is housed in a protective body that is placed in a tire and is free to move
about while the tire is in use with nothing connecting the monitor assembly
to the tire or tire rim. Specifically, the present invention relates to a monitoring device for a pneumatic tire that is housed in a substantially
spherical protective body. The spherical body is placed loosely between a tire and a tire rim when the tire is mounted on the tire rim and allowed to
freely move about the inside of the tire.
Background Information
Monitoring conditions of pneumatic tires while they are installed and
in use on a particular vehicle is desired in the art. The users of this technology particularly desire to measure the internal temperature and
internal pressure of a tire. These measurements are preferably capable of being taken while the tire is in use without having to remove the tire from the
vehicle or otherwise interrupt the use of the vehicle to take the
measurements. It is particularly desirable to monitor the conditions and
statistics of large off-the-road truck tires because the off-the-road tires are
expensive and subject to harsher conditions than typical passenger car tires. The off-the-road tires on large trucks and other vehicles must be
regularly maintained to maximize vehicle and tire efficiency.
Numerous types of monitoring devices are known in the art. One type of known monitoring device uses a passive integrative circuit
embedded within the body of the tire that is activated by a radio frequency transmission that energizes the circuit by inductive magnetic coupling.
Other prior art devices used for monitoring tire conditions include self-
powered circuits that are positioned external of the tire, such as at the valve
stem. Other active, self-powered programmable electronic devices are disclosed in U.S. Patents 5,500,065, 5,573,610, 5,562,787, and 5,573,61 1
which are assigned to the Assignee of the present application.
One problem common to each of these monitoring devices is the
problem of attaching the monitoring device to the tire with a stable and
lasting attachment. The attachment problem is difficult when the monitoring device is attached to the inside of the tire, the outside of the tire, or
embedded within the body of the tire. The mounting configuration must maintain the integrity of the tire. Mounting the device to the rim also creates
problems. The rim may be damaged, tool must be created, and the mounting configuration must prevent air from leaking from the tire. Each of these locations creates different problems with the attachment process as well as the manufacturing process of the tire. It is generally undesirable to
provide an attachment configuration that requires re-tooling or any re¬
directing of the existing tire manufacturing lines. It is thus desired in the art
to provide a monitoring device for a pneumatic tire that obviates the
attachment problems inherent with the prior art monitoring devices.
The prior art attachment problems exist because the forces on an
electronic monitoring device while connected to a pneumatic tire are significant and numerous. The forces in the footprint area of the tire must
be considered when mounting a monitoring device. Tires are subject to
rotational forces when the vehicle is moving and also to various impact forces when the tire contacts bumps or surface irregularities. The
attachment of the monitoring device to the tire must be strong enough and
secure enough to maintain the position of the monitoring device with respect
to the tire while experiencing all of these forces while also protecting the
monitoring device from damage resulting from these forces. These concerns have lead to the encapsulation of the monitoπng devices and numerous methods of attaching the monitoring device to the internal wall of
a tire. The attachment of the monitoring device to the internal wall of the tire
requires the tire to be balanced about its rotational axis prior to use. The monitoring device itself adds weight to the tire and the attachments known
in the art add further weight to the tire requiring the tire to be counterbalanced. It is thus desired to provide a monitoring device that may be used with a tire without requiring the tire to be counterbalanced.
Another significant problem experienced with attaching a monitoring device to a pneumatic tire is that the surface of the tire where the monitoring
device is typically anchored is not stable. Tires are designed to flex and
stretch to accommodate various pressures and forces. The attachment of the monitoring device to the tire must accommodate the movement and
stretching of the tire surface where the monitoring device is connected.
Such accommodation must last throughout the life of the tire and function
at a wide range of temperatures and pressures. It is thus desired in the art
to provide a monitoring device that may be used with a pneumatic tire
without being connected to one of the tire surfaces that flexes and
stretches.
Another problem in the art is that off-the-road tires typically have
water or another liquid in the bottom of the tire. One type of liquid typically placed in tires is a sealant sold under the Federally Registered Trademark
Tire Life by Fuller Bros., Inc. of Portland Oregon. The monitoring device of
the invention must be able to operate in a wet environment. Monitoring
devices submerged in a liquid will likely have impaired transmission performance and data may be lost because of the position of the device in
the tire.
SUMMARY OF THE INVENTION
In view of the foregoing, it is an objective of the present invention to provide a monitoring assembly for a pneumatic tire that may be monitored from the outside of the tire while the tire is mounted on a tire rim and while the vehicle is in use.
Another objective of the present invention is to provide a monitoring assembly for a pneumatic tire that is placed within the tire but is not
connected to the tire or tire rim allowing the monitoring device to move about freely inside the tire.
Still another objective of the present invention is to provide a
monitoring assembly for a pneumatic tire wherein the use of the monitoπng device does not require modification to the structure of the tire.
Another objective of the present invention is to provide a monitoring
assembly for a pneumatic tire that may be added to the tire just before the
tire is mounted on a tire rim such that the monitoring device may be
installed and used without modification to existing tire assembly lines.
A further objective of the present invention is to provide a monitoring assembly for a pneumatic tire that may be used with existing tires.
Still a further objective of the present invention is to provide a
monitoring assembly for a pneumatic tire that includes wings that orient the monitoring device with respect to the tire so that the antenna of the monitoring device may establish a reliable communication between the
monitoring device and a data gathering device outside of the tire.
A further objective of the present invention is to provide a monitoring assembly for a pneumatic tire that includes a pressure sensor that is
capable of sensing the internal pressure of the tire. Another objective of the present invention is to provide a monitoring assembly for a pneumatic tire that allows a pressure sensor to function
while reducing the risk that the pressure sensor malfunctions by filling the
breathing tube of the monitoring device with a transfer gel.
Another objective of the present invention is to provide a monitoring assembly for a pneumatic tire that protects the sensitive electronic equipment of the monitoring device in a protective body that has a series of
layers including a cushioned layer that absorbs impact forces.
Another objective of the present invention is to provide a monitoring
assembly for a pneumatic tire that has an exterior shape allowing it to easily
and relatively smoothly move about the inner chamber of a tire.
An additional objective of the present invention is to provide a
monitoring assembly for a pneumatic tire that is of simple construction, that achieves the stated objectives in a simple, effective, and inexpensive
manner, that solves the problems, and that satisfies the needs existing in
the art.
Another objective of the invention is to provide a monitoring device that will operate in a wet environment.
Another objective of the invention is to provide a monitoring device
that will float on a wide variety of liquids.
These and other objectives and advantages of the present invention
are achieved by the combination of a pneumatic tire and a monitoring assembly. The combination includes a pneumatic tire having a body
mounted on a rim to form a chamber between the body and said rim; a liquid disposed in the pneumatic tire, the liquid having a specific gravity; the monitoring assembly being loosely disposed within the chamber whereby
the monitoring assembly moves freely within said chamber being restrained only by said tire body and the rim; and the monitoring assembly having a specific gravity less than the specific gravity of the liquid such that the monitoring assembly will float in the liquid.
Other objectives and advantages of the invention are achieved by a
monitoring assembly for use in a pneumatic tire. The assembly includes at least one sensor for detecting an engineering condition of a tire; a protective
body surrounding the sensor; the protective body having sufficient curvature
enabling said body to roll on the inside of the tire; and the combination of
the protective body and the sensor having a specific gravity less than 1 so
that the monitoring assembly will float on liquids having a specific gravity of 1 and higher.
BRIEF DESCRIPTION OF THE DRAWINGS
The preferred embodiments of the invention, illustrative of the best
modes in which applicants contemplate applying the principles of the invention, are set forth in the following description and are shown in the
drawings and are particularly and distinctly pointed out and set forth in the appended claims.
Fig. 1 is a sectional view of a pneumatic tire mounted on a rim having
the monitoring device assembly of the present invention located in the
chamber between the tire body and the rim; Fig. 2 is an enlarged perspective view of the monitoring device assembly of Fig. 1 removed from within the tire;
Fig. 3 is a sectional view of the monitoring device of Fig. 2, the sectional view taken through a portion of the monitoring device assembly including the breathing tube;
Fig. 4 is a perspective view, portions of which are broken away and in section, of a modified embodiment of the monitoring device of Fig. 2;
Fig. 5 is a diagrammatic plan view with portions broken away
showing the modified monitoring device assembly of Fig. 4 located in a
pneumatic tire with the rim removed;
Fig. 6 is a fragmentary view with portions broken away and in section of a further modified monitoring device assembly from that of Fig. 4;
Figs. 7A-7D schematically depict alternative protective body shapes
for the monitoring assembly of the present invention; Fig. 8 is a perspective view of a modified embodiment of the
monitoring device of Fig. 2;
Fig. 9 is a view similar to Fig. 3 showing an alternative embodiment of the breathing tube configuration;
Fig. 10 is a view similar to Fig. 1 showing the monitoring assembly
floating in liquid disposed within the tire.
Similar numbers refer to similar elements throughout the
specification.
DESCRIPTION OF THE PREFERRED EMBODIMENTS The monitoring assembly of the present invention is indicated generally by the numeral 10 in the accompanying drawings. Monitoring
assembly 10 generally includes a radio frequency, active, electronic monitoring device 12 surrounded by a protective body 14. Device 12 may be of the type shown in U.S. Patent No. 5,500,065, the contents of which
are incorporated herein by reference, or could be of other configurations
and operations without effecting the concepts of the present invention.
Assembly 10 is used simply by placing it inside a tire 16 such that assembly
10 is trapped between tire 16 and the rim 18 on which the tire is mounted.
Assembly 10 is free to move about a pressurized air chamber 20 formed
between tire 16 and rim 18 with only the body of tire 16 and rim 18 stopping
or limiting the movement of assembly 10. In accordance with one of
the objectives of the present invention, assembly 10 may be simply placed in tire 16 before the tire is mounted on rim 18. This method of combining
assembly 10 with tire 16 allows the assembly to be used with existing tires, allows assembly 10 to be used with different tires, and does not require the
tire manufacturing line to be reconfigured to add assembly 10 to a specific tire.
The use of assembly 10 may be particularly useful in large off-the- road tires that do not rotate at a high rate of speed but could also be used
in truck and passenger tires if desired. Off-the-road tires are typically large
and have relatively thick side walls. Monitoring assembly 10 will rest at the
bottom of tire 16 as shown in Fig. 1 when tire 16 is rotating slowly about its rotational axis. Monitoring assembly 10 may rock back and forth as tire 16 rotates and experiences bumps but will not spin about the rotational axis of tire 16 at lower speeds. In these situations, monitoring assembly 10 would not experience significant impact or shock forces that would tend to damage electronic active monitoring device 12. When tire 16 rotates faster, there
may be sufficient friction and forces between protective body 14 and tire 16
to cause monitoring assembly 10 to rotate about the rotational axis of tire 16 as if it was fixed to the inner surface of the tire. Protective body 14 is
formed in a shape, such as the substantially spherical shape depicted in the
drawings, that allows assembly 10 to roll about the interior of tire 16.
Protective body 14 is shaped to prevent the movement of monitoring
assembly 10 about the interior of tire 16 from causing additional forces to be exerted on electronic monitoring device 12 and to tire 16. For instance,
protective body 14 may be formed in any of the shapes depicted in Figs. 7A-7D.
In accordance with another objective of the present invention, protective body 14 includes an encapsulation layer 22, an outer skin 24, and
a cushion 26 disposed between skin 24 and encapsulation layer 22 as shown in FIG. 3. Encapsulation layer 22 may be formed from a
substantially rigid encapsulation material such as a hard plastic, epoxy, or
rubber. Encapsulation layer 22 is configured to maintain the position of each of the elements of electronic monitoring device 12 when monitoring
assembly 10 is loosely moving about chamber 20 while tire 16 is in use. Cushion 26 preferably is fabricated from a foam or a soft rubber and provides a shock absorber to assembly 10. The foam is preferably resilient. As can be seen in Fig. 3, the thickness of cushion 26 varies so that the internal surface of cushion 26 matches the exterior surface of encapsulation
layer 22, while the external surface of cushion 26 is substantially spherical.
Skin 24 provides a durable, protective layer to monitoring assembly 10 and may be fabricated from a substantially durable rubber or plastic that is fixed
to cushion 26 by a suitable adhesive or by curing the materials together. In
one embodiment of the present invention, skin 24 has an external diameter
of about 2 inches to about 2 ΛA inches. Obviously, other sizes of assembly
10 are contemplated by the present invention.
Electronic monitoring device 12 preferably is an active monitoring
device that includes at least one sensor such as a pressure sensor 30.
Other sensors may include a thermometer 32 for measuring the internal temperature of tire 16. Electronic monitoring device 12 may further include
a battery 34 that powers a central processing unit (CPU) 36 that both drives and monitors the other sensors of device 12. Numerous types of electronic monitoring devices are known in the art and the specific configuration
described is not to limit the application of the present invention.
Pressure sensor 30 must be exposed to the pressure of the
surrounding atmosphere in chamber 20 for it to provide useful information.
A breathing tube 38 thus is provided through encapsulation layer 22, cushion 26, and skin 24. Breathing tube 38 preferably is formed during the
fabrication of monitoring assembly 10 or may be formed after assembly 10 has been fabricated. Breathing tube 38 may be empty to provide direct fluid
communication between pressure sensor 30 and the surrounding atmosphere. In another embodiment of the present invention, breathing tube 38 is filled with a transfer gel 40 that has a one-to-one transfer ratio so that pressure sensor 30 senses the pressure change in transfer gel 40
which, in turn, senses and experiences pressure changes in the atmosphere
of chamber 20 that surrounds monitoring assembly 10. Transfer gel 40
prevents breathing tube 38 from being clogged with debris such as dust,
rubber shavings, or grease that may be present in chamber 30 or on rim 18.
An indentation 42 is provided in skin 24 to give transfer gel 40 more surface
area that is exposed to the atmosphere surrounding monitoring assembly
10. In another embodiment of the invention, a flexible diaphragm 44 (Fig.
9) covers breathing tube 38 to prevent transfer gel 40 from becoming
contaminated.
In accordance with another objective of the present invention, monitoring assembly 10 may be provided with a pair of wings 50 that extend from substantially opposite sides of protective body 14 as shown in FIG. 4.
Wings 50 help maintain the alignment of assembly 10 in tire 16 when the
tire is in use. The proper alignment of assembly 10 within the tire provides a strong reliable signal between electronic monitoring device 12 and a data
gathering machine (not shown) positioned outside of tire 16. In one
embodiment of the present invention, each wing 50 is formed from the
same material as skin 24 and includes a circumferential stiffening rib 52 and
an intervening webbing 54. Wings 50 may also be fabricated from a material that is substantially the same or the same as the material of an innerliner 56 of tire 16. In still other embodiments of the present invention, wings 50 may be reinforced with rigid plastic member or other types of reinforcements. As discussed above, wings 50 help maintain the alignment
of monitoring assembly 10 within tire 16 in order to provide a more efficient transmission signal therefrom. As shown in Fig. 5, wings 50 will help align
monitoring assembly 10 such that each wing 50 extends in a direct substantially parallel to the rotational axis of tire 16.
In accordance with another objective of the present invention, an
antenna 56 may extend from CPU 36 or another location of electronic
monitoring device 12 through encapsulation layer 22, through cushion 26,
through skin 24, and into wing 50. The extension of antenna 56 into wing
50 allows it to more easily communicate with a data gathering device (again not shown) outside of tire 16 and allows antenna 56 to be ideally configured to transfer strong signals. In addition, the placement of antenna 56 in wing
50 allows the configuration and alignment of antenna 56 to be predictable
so that the corresponding antenna on the data gathering device may be ideally aligned to communicate with antenna 56. Another embodiment of
the invention is depicted in Fig. 8 with monitoring assembly 100 having a pair of wings 102 that are conically-shaped.
In accordance with other objectives and advantages of the invention,
monitoring assembly 10 is configured to be liquid-tight and float (Fig. 10) on a variety of liquids 110 such as water, Tire Life®, or other liquids. Most liquids 1 10 disposed within tire 16 will have a specific gravity of 1 or higher. As such, the specific gravity of assembly 10 must be less than 1 in these embodiments. Assembly 10 may be configured to float by fabricating protective body 14 entirely from materials that float or by trapping a sufficient amount of air within protective body 14 to cause assembly 10 to float.
In accordance with another objective of the invention, protective body
14 is fluid-tight to prevent fluid from entering protective body 14 when assembly 10 is floating in liquid.
Assembly 10 has a longer life when it floats on the upper surface of
liquid 1 10 and the transmissions to and from tire 16 are improved when
assembly 10 is not surrounded by liquid 110. Wings 50 or 102 also function
in liquid 1 10 to consistently position assembly 10 within tire 16.
Accordingly, the improved monitoring assembly for a pneumatic tire is simplified, provides an effective, safe, inexpensive, and efficient device
that achieves all the enumerated objectives, provides for eliminating difficulties encountered with prior devices, and solves problems and obtains
new results in the art.
In the foregoing description, certain terms have been used for brevity,
clearness, and understanding; but no unnecessary limitations are to be implied therefrom beyond the requirement of the prior art, because such
terms are used for descriptive purposes and are intended to be broadly
construed.
Moreover, the description and illustration of the invention is by way of example, and the scope of the invention is not limited to the exact details
shown or described. Having now described the features, discoveries, and principles of the invention, the manner in which the monitoring assembly of the present invention is constructed and used, the characteristics of the construction, and the advantageous new and useful results obtained; the new and useful structures, devices, elements, arrangements, parts, and combinations are set forth in the appended claims.

Claims

1. In combination, a pneumatic tire and a monitoring assembly; said pneumatic tire having a body mounted on a rim to form a chamber between said body and said rim; a liquid disposed in the pneumatic tire, the liquid having a specific gravity; said monitoring assembly being loosely disposed within said chamber whereby said monitoring assembly moves freely within said chamber being restrained only by said tire body and said rim; and said monitoring assembly having a specific gravity less than the specific gravity of said liquid such that said monitoring assembly will float in said liquid.
2. The combination of claim 1 , wherein said monitoring assembly includes an electronic monitoring device.
3. The combination of claim 2, wherein said electronic monitoring device includes a pressure sensor.
4. The combination of claim 3, wherein said electronic monitoring device is surrounded by a liquid-tight protective body.
5. The combination of claim 4, wherein said protective body includes a breathing tube that provides communication between said pressure sensor and the atmosphere surrounding said protective body.
6. The combination of claim 5, further comprising a transfer gel substantially filling said breathing tube.
7. The combination of claim 6, further comprising a diaphragm extending across said breathing tube.
8. The combination of claim 4, wherein said protective body includes an encapsulation layer adjacent said monitoring device.
9. The combination of claim 8, wherein said encapsulation layer is formed from a substantially rigid encapsulation material.
10. The combination of claim 9, wherein said encapsulation material
is an epoxy.
1 1. The combination of claim 8, wherein said protective layer further
includes a cushion layer surrounding said encapsulation layer.
12. The combination of claim 11 , wherein said cushion material is
a soft rubber.
13. The combination of claim 11 , wherein said cushion material is a foam.
14. The combination of claim 11 , wherein said protective layer further includes a skin layer substantially surrounding said cushion layer.
15. The combination of claim 1 , further comprising a pair of wings extending outwardly from said monitoring assembly.
16. The combination of claim 15, further comprising an antenna
connected to said monitoring assembly, said antenna disposed in at least one of said wings.
17. A monitoring assembly for use in a pneumatic tire, said assembly
comprising: at least one sensor for detecting an engineering condition of a tire;
a protective body surrounding said sensor; said protective body having sufficient curvature enabling said body to roll on the inside of the tire;
and
the combination of said protective body and said sensor having a specific gravity less than 1 so that the monitoring assembly will float on liquids having a specific gravity of 1 and higher.
18. The assembly of claim 17, wherein said protective body is liquid- tight and includes an encapsulation layer disposed adjacent said sensor, an outer skin, and a cushion disposed between said outer skin and said encapsulation layer.
19. The assembly of claim 18, further comprising a pair of wings extending from said protective body.
PCT/US2001/020404 2000-06-30 2001-06-26 Non-attached monitoring assembly for pneumatic tire WO2002002358A1 (en)

Priority Applications (7)

Application Number Priority Date Filing Date Title
DE60106615T DE60106615T2 (en) 2000-06-30 2001-06-26 LIGHT MONITORING TIRES FOR TIRES
JP2002506960A JP4469937B2 (en) 2000-06-30 2001-06-26 Non-mounting monitoring assembly for pneumatic tires
AU7151201A AU7151201A (en) 2000-06-30 2001-06-26 Non-attached monitoring assembly for pneumatic tire
MXPA02011220A MXPA02011220A (en) 2000-06-30 2001-06-26 Non-attached monitoring assembly for pneumatic tire.
CA002411722A CA2411722C (en) 2000-06-30 2001-06-26 Non-attached monitoring assembly for pneumatic tire
EP01950531A EP1294583B1 (en) 2000-06-30 2001-06-26 Non-attached monitoring assembly for pneumatic tire
AU2001271512A AU2001271512B2 (en) 2000-06-30 2001-06-26 Non-attached monitoring assembly for pneumatic tire

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
US09/608,425 2000-06-30
US09/608,425 US6360594B1 (en) 1998-11-13 2000-06-30 Non-attached monitoring assembly for pneumatic tire

Publications (1)

Publication Number Publication Date
WO2002002358A1 true WO2002002358A1 (en) 2002-01-10

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ID=24436453

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PCT/US2001/020404 WO2002002358A1 (en) 2000-06-30 2001-06-26 Non-attached monitoring assembly for pneumatic tire

Country Status (8)

Country Link
US (2) US6360594B1 (en)
EP (1) EP1294583B1 (en)
JP (1) JP4469937B2 (en)
AU (2) AU2001271512B2 (en)
CA (1) CA2411722C (en)
DE (1) DE60106615T2 (en)
MX (1) MXPA02011220A (en)
WO (1) WO2002002358A1 (en)

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DE60106615D1 (en) 2004-11-25
CA2411722A1 (en) 2002-01-10
EP1294583B1 (en) 2004-10-20
DE60106615T2 (en) 2005-10-27
AU2001271512B2 (en) 2005-01-20
US6360594B1 (en) 2002-03-26
JP4469937B2 (en) 2010-06-02
CA2411722C (en) 2009-09-29
US6516660B1 (en) 2003-02-11
EP1294583A1 (en) 2003-03-26
JP2004502183A (en) 2004-01-22
AU7151201A (en) 2002-01-14
MXPA02011220A (en) 2004-03-16

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